Development and regulation of immune responses to food antigens in pre- and postnatal life.

Harald Renz, Petra Ina Pfefferle, René Teich, Holger Garn
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引用次数: 9

Abstract

Food antigens are harmless environmental components. The physiological response is the development of clinical and immunological tolerance. It is now well appreciated that tolerance development is the result of active immunoregulation and depends on a close interaction between the innate and adaptive immune system resulting in the development of tolerance-mediating T-cell responses. Programming of the immune system, particularly with regard to tolerance development, already starts before birth and stays under close control of the maternal immune system. Therefore, the pre-and postnatal period represents an important 'window of opportunity' for immunoprogramming. Underlying mechanisms include maternal cell transmission, antibody transfer, transfer of mediates/cytokines, and transmission of antigens and allergens. Immunoprogramming is fostered and augmented in the context of microbial components. Recently, several microbes have been identified which possess the capacity of immunoprogramming early in life. Epigenetic regulation represents an important novel mechanism in this regard. This concept opens new avenues for the development of preventive strategies to avoid inappropriate immune responses against food antigens.

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产前和产后对食物抗原的免疫反应的发展和调节。
食物抗原是无害的环境成分。生理反应是临床和免疫耐受的发展。现在人们很清楚,耐受性的发展是主动免疫调节的结果,依赖于先天免疫系统和适应性免疫系统之间的密切相互作用,从而导致耐受性介导的t细胞反应的发展。免疫系统的编程,特别是关于耐受性的发展,在出生前就已经开始,并受到母体免疫系统的密切控制。因此,产前和产后是免疫编程的重要“机会之窗”。潜在的机制包括母体细胞的传递、抗体的传递、介质/细胞因子的传递、抗原和过敏原的传递。免疫编程是在微生物成分的环境中培养和增强的。最近,已经确定了几种在生命早期具有免疫编程能力的微生物。在这方面,表观遗传调控是一种重要的新机制。这一概念为制定预防策略以避免针对食物抗原的不适当免疫反应开辟了新的途径。
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